Allgon Antenna Systems
Transcription
Allgon Antenna Systems
Allgon Antenna Systems NMT 900, ETACS 900, GSM 900, DCS 1800, UMTS 2100 www.allgon.com T A B L E O F C O N T E N T S T A What’s Inside B Allgon 2100 MHz Dual Polarized Antennas, L including 1800-2100 MHz Dualband “UMTS Antennas and Filters” (UX, UXC) E Overview Page 5 Quick Reference Guide Page 6 65 Degree Beamwidth, Singleband Page 7 65 Degree Beamwidth, Dualband Page 9 1800 / 2100 MHz Dualband Filter Page 10 1800 MHz Rejection Filter Page 11 900 / 1800 / 2100 MHz Triple band Filter Page 12 O Allgon Broadband Antennas (UXM) F Overview Page 13 Quick Reference Guide Page 14 65 Degree Beamwidth Page 15 90 Degree Beamwidth Page 17 C Allgon 1800 MHz Dual Polarized Antennas (XM) O Overview Page 19 Quick Reference Guide Page 20 65 Degree Beamwidth Page 21 N Allgon 900 MHz Dual Polarized Antennas (XU) T Overview Page 23 Quick Reference Guide Page 24 65 Degree Beamwidth Page 25 E Allgon 900 MHz Urban Panel Antennas (U) N Overview Page 27 Quick Reference Guide Page 28 65 Degree Beamwidth Page 29 90 Degree Beamwidth Page 31 T Allgon Omnidirectional Antennas (O) S Overview Page 32 Quick Reference Guide Page 33 900 MHz Omni Page 34 900 MHz Electrical Downtilt Inverted Mount Page 34 Allgon Indoor Antennas (ALIC) Overview Page 35 Quick Reference Guide Page 36 Multi-Band Indoor Omni Page 37 Allgon 2G Dualband Solution (ALVC, DXC) Overview Page 39 Quick Reference Guide Page 40 65 Degree Beamwidth Page 41 900 / 1800 MHz Dual Band Filter Page 44 Antenna Beamtilt Page 45 Testing Procedures Page 47 Mounting Brackets Page 48 We also have a wide range of 800 and 1900 MHz antennas. For more information, see our website at www.allgon.com. Digital pattern information for 900 and 1800 MHz antennas can be obtained from www.allgon.com. Ta b l e o f C o n t e n t s P a g e 3 A l l g o n U M T S S i t e S o l u t i o n s Optimized Radio Performance - Dualband GSM 900/1800 Filter - Dual pol, dualband antenna - Separate UMTS antennas with MET - Rejection Filter Co-siting Benefits - Dual pol, dualband GSM 1800/UMTS antenna - Rejection filter Feeder Savings - Tripleband filter - Separate antennas for optimized radio performance - Rejection Filter Base Station Antennas Page 4 2 1 0 0 M H z D u a l P o l a r i z e d A n t e n n a 2100 MHz Dual Polarized Antenna Features • Optimum system performance • Top value at lowest total cost over time • Evolved from well-proven leading-edge technology •Discreet, slim, aesthetically pleasing design • Optional Manual adjustable Electrical Tilt (MET) for tuning flexibility • Can be upgraded to remote controlled RET functionality starting in 2002 Design Philosophy The Allgon singleband, dual polarized UMTS antenna with its ultra-slim design and sophisticated electrical performance ensures maximum efficiency, as well as a stable pattern over the entire frequency range. This design relies on leading-edge patch technology fed via a micro strip PCB network. The slant + 45° dual polarization system provides the independent fading signals needed for achieving top-quality coverage via diversity concepts. The optional Manual adjustable Electrical Tilt (MET) module is based on a patented sliding dielectric that minimizes intermodulation distortion and maximizes efficiency. The MET allows you to fieldadjust the electrical tilt from 0° - VBW for optimum roll-off effect. Quality Materials Proper use of materials and their structure ensures performance integrity. In antennas the electrical performance is directly related to mechanical performance. The choice of radome material is crucial since it acts as a window between the radiating elements and the coverage area. Our UV stabilized PVC radome is resistant to moisture absorption. Furthermore, our radomes can withstand mechanical stresses, even at low temperatures and long exposure to UV radiation. For corrosion inhibition, we use aircraft quality aluminum alloy that is inherently resistant to corrosion caused by the environment. Performance The Allgon UMTS panel antennas have verified vertical pattern performance on 100% of the antennas. Given the narrow mechanical width and depth of the product, the offerings are unmatched in Front-to-Back Ratio for all opening angles. The UMTS panel antenna has consistent reliable performance from frequency to frequency and product to product. Brackets Allgon antenna mounts have been carefully designed and tested to ensure a fast and problem-free installation. The mounts are pre-mounted or co-packed with the antenna and ready for mounting directly to a pole, outside diameter 1.0” - 5.0” (25-125 mm). They can be mounted vertically or tilted, see tilt range specified in each antenna specification. For more information, please see pages 48 - 50. Testing Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. For more information on testing procedures, see page 47. Our front-toback ratios are specified for +/- 20° from 180° (worst case) to 0°. Connectors 7/16 DIN Connector Base Station Antennas Page 5 2100 MHz Dual Polarized Antenna Q U I C K R E F E R E N Description Page 15.5 dBi 7500.00 7500.02 7500.06 UX-2100-65-15.5i-0-D UX-2100-65-15.5i-2-D UX-2100-65-15.5i-6-D 7 7 7 18 dBi 7501.00 7501.02 7501.06 UX-2100-65-18i-0-D UX-2100-65-18i-2-D UX-2100-65-18i-6-D 7 7 7 G Gain Part Number 17.5 / 18 dBi U I D Description 7540.00 Part Number 9281.01 9283.01 9282.01 Page UXC-1800/2100-65-17.5/18i-A/A-D Description Dualband Filter Rejection Filter Triple band Filter Page 10 11 12 Page 15.5 dBi 7521.00 UX-2100-65-15.5i-A-D 8 15.5 dBi 7520.00 UX-2100-65-18i-A-D 8 Please contact Allgon for the latest updates regarding product availability. 2100 MHz Dual Polarized Antenna Description Detail: U X - 2 1 0 0 - 6 5 - 1 8 i - 0 / A - D UMTS Dual Polarized Family E Description UMTS Filters 65 Degree 2100 MHz Dual Polarized Antenna with Manual adjustable Electrical Tilt (MET) Gain Part Number E 65 Degree Dualband GSM 1800/2100 Antenna with MET 65 Degree 2100 MHz Dual Polarized Panel Antenna Gain Part Number C Frequency Band Horizontal Beamwidth Gain in dBi 7/16 DIN Connector Electrical Downtilt Angle or A for MET Antennas may be ordered using part number or description. Base Station Antennas Page 6 9 M H z Electrical Specifications D u a l P o l a r i z e d 7500 A n t e n n a 7501 (UX-2100-65-15.5i) (UX-2100-65-18i) Frequency Range (MHz) 1900 - 2170 Gain 15.5 dBi (13.5 dBd) linear, dual slant 45 Polarization <1.4:1 VSWR, 50Ω (1920-1980; 2110-2170 MHz) <1.5:1 VSWR, 50Ω (1900-1920; 2010-2025 MHz) 65° Horizontal 3dB beamwidth 13° Vertical 3dB beamwidth 0°, 2° & 6° Custom electrical downtilts >30 dB Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power >25 dB Suppression of first upper side lobe (0° ET) >20 dB First lower null fill >-22 dB Maximum CW input power 800W IM, any order in UL-band <-117 dBm for 2x20W 1900 - 2170 18 dBi (16 dBd) linear, dual slant 45 <1.4:1 <1.5:1 65° 6.5° 0°, 2° & 6° >30 dB >25 dB >22 dB >-20 dB 800W <-117 dBm for 2x20W 7/16 DIN bottom 1297 mm (51”) 167 mm (6.6”) 58 mm (2.3”) 4.1 kg 7.7 kg 70 m/s (156 mph) 0.22 sq.m 221 N 7/16 DIN bottom 697 mm (27.4”) 167 mm (6.6”) 58 mm (2.3”) 2.5 kg 6.1 kg 70 m/s (156 mph) 0.12 sq.m 119 N All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket to be pre-mounted and/or co-packed -1.5° to +35° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). -1° to +17° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 6. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7500.02 Patterns Typical Horizontal and Vertical 7501.02 Patterns Base Station Antennas Page 7 UX-2100-65-18i Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h UX-2100-65-15.5i Mechanical Specifications 2100 MHz Dual Polarized Antenna 2 1 0 0 2100 MHz Dual Polarized Antenna UX-2100-65-15.5i-A UX-2100-65-18i-A 2 1 0 0 M H z Electrical Specifications D u a l P o l a r i z e d 7521 A n t e n n a 7520 (UX-2100-65-15.5i-A) (UX-2100-65-18i-A) Frequency Range (MHz) 1900 - 2170 Gain 15.5 dBi (13.5 dBd) linear, dual slant 45 Polarization <1.4:1 VSWR, 50Ω (1920-1980; 2110-2170 MHz) <1.5:1 VSWR, 50Ω (1900-1920; 2010-2025 MHz) 65° Horizontal 3dB beamwidth 13° Vertical 3dB beamwidth 0° - 16°, in 1° increments MET (AEDT) >30 dB Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power >25 dB Suppression of first upper side lobe (0° ET) >21 dB First lower null fill >-24 dB Maximum CW input power 800W IM, any order in UL-band <-117 dBm for 2x20W 1900 - 2170 18 dBi (16 dBd) linear, dual slant 45 <1.4:1 <1.5:1 65° 6.5° 0° - 8°, in 1° increments >30 dB >25 dB >21 dB >-24 dB 800W <-117 dBm for 2x20W Mechanical Specifications Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h 7/16 DIN bottom 1297 mm (51”) 167 mm (6.6”) 58 mm (2.3”) 5 kg 8.6 kg 70 m/s (156 mph) 0.22 sq.m 221 N 7/16 DIN bottom 697 mm (27.4”) 167 mm (6.6”) 58 mm (2.3”) 3.5 kg 7.1 kg 70 m/s (156 mph) 0.12 sq.m 119 N All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket to be pre-mounted and/or co-packed -1.5° to +35° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). -1° to +17° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 6. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7521.00 Patterns Base Station Antennas Page 8 Typical Horizontal and Vertical 7520.00 Patterns M H z D u a l Electrical Specifications P o l a r i z e d A n t e n n a 7540 (UXC-1800/2100-65-17.5/18i-A/A-D) Frequency range 1710 - 1880 / 1900 - 2170 Gain 17.5/18 dBi (15.5/16 dBd) linear, dual slant 45 Polarization <1.4:1 (1805-1880 and 2110-2170 MHz) VSWR, 50Ω <1.5:1 (1710-1785 and 1900-1980 MHz) VSWR, 50Ω 65° Horizontal 3dB beamwidth 7° / 6.5° Vertical 3dB beamwidth 0° - 8°, in 1° increments MET (AEDT) >29 / >30 dB Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power >23 / >25 dB Suppression of first upper side lobe (0° ET) >15 / >17 dB First lower null fill N/A Maximum CW input power 800W Two tone intermodulation 3rd order (1800 MHz) <-110 dBm for 2x10W IM, any order UL-band (2100 MHz) <-117 dBm for 2x20W UXC-1800/2100-65-17.5/18i-A Mechanical Specifications Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h 7/16 DIN bottom 1296 mm (51”) 326 mm (6.6”) 80 mm (2.3”) 10 kg 13.6 kg 70 m/s (156 mph) 0.22 sq.m 425 N All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket to be pre-mounted and/or co-packed -1° to +17° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). *Values are representative for 0° EDT, variants may differ slightly 2100 MHz Dual Polarized Antenna 2 1 0 0 For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 6. 0 -5 -10 -15 -20 -25 -30 -35 -40 Typical Horizontal and Vertical 7540.00 Patterns Base Station Antennas Page 9 UMTS Dualband Filter U M T S D u a l b a n d F i l t e r RF Specifications 9281.01 (Dualband filter GSM 1800/UMTS) Frequency range 1710-1880 MHz GSM 1800 band 1920-2170 MHz UMTS band >20 dB GSM 1800 port Return loss >20 dB UMTS port >20 dB Common port Maximum input power GSM 1800 port 6x+43 dBm 2x+43 dBm UMTS port Insertion loss <0.5 dB 1710 - 1870 MHz <0.85 dB 1870 - 1880 MHz <0.7 dB 1920 - 1930 MHz <0.5 dB 1920 - 2170 MHz Isolation between ports GSM 1800 port to UMTS port 1920-2170 MHz >70 dB UMTS port to GSM 1800 port 1710-1880 MHz >50 dB Dualband Filter GSM 1800/UMTS Mechanical Specifications Connector (all ports) 1) Height Width 2) Depth Weight 7/16 female 60 mm (2.4 ”) 190 mm (7.5 ”) 110 mm (4.3”) <2.0 kg Comments 1) The common connector is placed on the opposite side of the BTS ports (inline). 2) Not including the connectors. Dualband Filter GSM 1800 / UMTS Insertion Loss Return Loss dB dB Return Loss Insertion Loss dB dB 0 -10 80 -0.5 Insertion Loss -15 60 -10 -1 -20 40 Return Loss 1800 port -15 -1.5 -25 20 Return Loss UMTS port -20 -2 -30 0 -35 -20 0 -5 Return Loss Common Port -25 -2.5 -30 -3 -40 -40 -35 -3.5 -45 -50 -40 -4 -50 -80 -45 -4.5 -55 -100 Isolation between ports -50 1700 MHz 1950 MHz -5 2200 MHz Base Station Antennas Page 10 -60 1700 MHz 1950 MHz -120 2200 MHz U M T S R e j e c t i o n Frequency range Return loss Maximum input power Insertion loss Out of band rejection UMTS Rejection Filter RF Specifications F i l t e r 9283.01 (GSM 1800 MHz rejection filter for UMTS) BTS port ANT port 1710 - 1870 MHz 1870 - 1880 MHz 1920 - 1980 MHz 2110 - 2170 MHz 1710-1880 MHz >20 dB >20 dB 6x+43 dBm <0.5 dB <0.7 dB >70 dB >70 dB Connector 1) BTS port ANT port 1800 MHz Rejection Filter Mechanical Specifications 7/16 male 7/16 female 60 mm (2.4”) 65 mm (2.6”) 160 mm (6.3”) <2.0 kg Height Width 2) Depth Weight Comments 1) The connectors are mounted on opposite sides of the filter. 2) Not including the connectors. GSM 1800 MHz rejection filter for UMTS Return Loss Insertion Loss dB dB 5 10 0 0 -5 -10 Insertion Loss -10 -20 Return Loss -15 -30 -20 -40 -25 -25 -30 -60 -35 -70 -40 -80 -45 1.680 GHz 1.840 GHz -90 2.000 GHz Base Station Antennas Page 11 UMTS Triple band Filter U M T S T r i p l e b a n d Preliminary RF Specifications F i l t e r Available in volume Q3 2002 9282.01 (Triple band filter GSM 900/1800/UMTS) Triple band Filter GSM 900/GSM 1800/ UMTS Frequency range 880-960 MHz GSM 900 band 1710-1880 MHz GSM 1800 band 1920-2170 MHz UMTS band Return loss >18 dB GSM 900 port >18 dB GSM 1800 port >18 dB UMTS port >18 dB Common port Maximum input power GSM 900 port 6x+43 dBm 6x+43 dBm GSM 1800 port 2x+46 dBm UMTS port Insertion loss <0.5 dB 880-960 MHz <0.5 dB 1710-1870 MHz; 1870-1880 MHz <0.5 dB 1920-1930 MHz; 1930-2170 MHz Isolation between ports GSM 900 port to GSM 1800 and UMTS bands >40 dB >60 dB GSM 1800 port to GSM 900 >40 dB (for triple band) and UMTS bands >60 dB UMTS port to GSM 900 >40 dB (for triple band and GSM 1800 bands) >40 dB UMTS port to GSM 1800 Mechanical Specifications Connector (all ports) 1) Height Width 2) Depth Weight Comments 1) The common connector is placed on the opposite side of the BTS ports (inline). 2) Not including the connectors. 3) Patent pending Base Station Antennas Page 12 7/16 male 80 mm (3.1”) 200 mm (7.9”) 110 mm (4.3”) <2.0 kg 1 7 1 0 - 2 1 7 0 M H z B r o a d B a n d A n t e n n a Features • Covers Several different frequency bands • Superior radiation pattern • High cross polar discrimination factor • Excellent front-to-back ratio • AEDT functionality for tuning flexibility • Field adjustable Manual adjustable Electrical Tilt (MET) in one degree increments • Prepared for remote-controlled MET functionality Design Philosophy The Allgon Broad Band antenna design is based on a patented stacked aperture-coupled patch technology, which provides high isolation performance and a wide VSWR bandwidth. The antennas have superior radiation patterns due to a unique reflector design which provides a very small variation of the -3 dB horizontal beam width over the frequency band as well as a high front-toback ratio. Allgon Broad Band antennas come with MET for tuning flexibility of tilt angles. For MET information, see page 45. This design ensures the highest possible cross-polar discrimination value. Quality Materials Proper use of materials and their structure ensure performance integrity. In antennas, the electrical performance is directly related to mechanical structure. The choice of radome material is crucial since it acts as a window between the radiating elements and the coverage area. Our UV stabilized PVC and extruded fiberglass radomes have extremely low moisture absorption. Further, our radomes withstand mechanical stresses, even at low temperatures and long exposure to UV radiation. For corrosion inhibition, we use aircraft quality aluminum alloy that is inherently resistant to corrosion caused by the environment. Performance The Allgon Dual Polarized antenna has been designed and tested to ensure maximum performance and reduced polarization errors. Isolation is another important aspect of dual polarized antennas. A well designed antenna should have at least 30 dB - it is a sign of quality and shows how much effort has been put into the design stage. Brackets Allgon antenna mounts have been carefully designed and tested to ensure a fast and problemfree installation. The mounts are pre-mounted or co-packed with the antenna and ready for mounting directly to a pole, outside diameter 1.0” 5.0” (25-125 mm). They can be mounted vertically or tilted, see tilt range specified in each antenna specification. For more information, please see pages 48 - 50. Testing Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. For more information on testing procedures, see page 47. Our front-to-back ratios are specified for +20° from 180° (worst case) to 0° in a total power configuration. Connectors Upper & Lower Placement 7/16 DIN Connector Base Station Antennas Page 13 1710 - 2170 MHz Broad Band Antenna Available in volume in Q3 2002. 1710 - 2170 MHz Broad Band Antennas Q U I C K R E F E R E N C E G U I D E 65 Degree 1710 - 2170 MHz Dual Polarized Gain Part Number Description Page 15 dBi 7700.00 7700.06 UXM-1710-2170-65-15i-0-D UXM-1710-2170-65-15i-6-D 15 15 18 dBi 7701.00 7701.06 7721.00 UXM-1710-2170-65-18i-0-D UXM-1710-2170-65-18i-6-D UXM-1710-2170-65-18i-A-D 15 15 16 19 dBi 7722.00 UXM-1710-2170-65-19i-A-D 16 90 Degree 1850 - 2170 MHz Dual Polarized Gain Part Number Description Page 13.5 dBi 7735.00 UXM-1850-2170-90-13.5i-A-D 17 16.5 dBi 7740.00 UXM-1850-2170-90-16.5i-A-D 17 18 dBi 7745.00 UXM-1850-2170-90-18i-A-D 18 Available in volume in Q3 2002. Please contact Allgon for the latest updates regarding product availability. 1710 - 2170 MHz Broad Band Antenna Description Detail: U X M - 1710-2100- 6 5 - 1 8 i - A - D Broad Band Family Frequency Band Horizontal Beamwidth Gain in dBi 7/16 DIN Connector Adjustable Downtilt Angle Antennas may be ordered using part number or description. Base Station Antennas Page 14 - 2 1 7 0 M H z B r o a d B a n d A n t e n n a Available in volume Q3 2002 Preliminary Electrical Specifications 7700 7701 (UXM-1710-2170-65-18i) 1710 - 2170 15 dBi (13 dBd) dual linear, +/- 45° <1.4:1 65° 13.5° 0° & 6° >30 dB >25 dB >18 dB <-20 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB 1710 - 2170 18 dBi (16 dBd) dual linear, +/- 45° <1.4:1 65° 6.7° 0° & 6° > 30 dB > 25 dB > 19 dB <-20 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB 7/16 DIN bottom mounted 27.4" (697 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) 7/16 DIN bottom mounted 51" (1297 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) Frequency range (MHz) Gain Polarization VSWR, 50Ω Horizontal 3dB beamwidth Vertical 3dB beamwidth Custom electrical downtilt Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power Suppression of first upper side lobe (0° ET) First lower null fill Power handling, average per input Power handling, average total Typical IM3, 2 Tx @ 43 dBm (1800, 1900 MHz) Typical IM7, 2 Tx @ 43 dBm (2100 MHz) Isolation between ports Preliminary Mechanical Specifications Connector Height Width Depth Survival wind speed Pole mount and downtilt bracket are pre-mounted. Tilt range -1.5° to +35° Comments Gain is typical within frequency band. Radome color is NCS 2502-B (RAL 7035)(gray). 0 -1° to +17° For a complete list of released models pertaining to gain and electrical downtilt, please see the quick reference guide on page 14. 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7700.00 Patterns Typical Horizontal and Vertical 7701.00 Patterns Base Station Antennas Page 15 UXM-1710-217065-18i *All feed network components DC grounded for Lightning Protection UXM-1710-217065-15i (UXM-1710-2170-65-15i) 1710 - 2170 MHz Broad Band Antenna 1 7 1 0 1710 - 2170 Broad Band Antenna UXM-1710-217065-18i-A UXM-1710-217065-17i-A 1 7 1 0 - 2 1 7 0 M H z B r o a d B a n d A n t e n n a Available in volume Q3 2002 Preliminary Electrical Specifications 7721 7722 (UXM-1710-2170-65-18i-A) (UXM-1710-2170-65-19i-A) 1710 - 2170 18 dBi (16 dBd) dual linear, +/- 45° <1.4:1 65° 6.8° 0° - 8° >30 dB >25 dB >18 dB <-20 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB 1710 - 2170 19 dBi (17 dBd) dual linear, +/- 45° <1.4:1 65° 4.6° 0° - 5° > 30 dB > 25 dB > 18 dB <-20 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB 7/16 DIN bottom mounted 51" (1297 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) 7/16 DIN bottom mounted 78.7" (~2000 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) Frequency range (MHz) Gain Polarization VSWR, 50Ω Horizontal 3dB beamwidth Vertical 3dB beamwidth MET (AEDT) Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power Suppression of first upper side lobe (0° ET) First lower null fill Power handling, average per input Power handling, average total Typical IM3, 2 Tx @ 43dBm (1800, 1900 MHz) Typical IM7, 2 Tx @ 43dBm (2100 MHz) Isolation between ports Preliminary Mechanical Specifications Connector Height Width Depth Survival wind speed *All feed network components DC grounded for Lightning Protection Pole mount and downtilt bracket are pre-mounted. Tilt range -1° to +17° Comments Gain is typical within frequency band. Radome color is NCS 2502-B (RAL 7035)(gray). 0 -0.4° to +10.6° For a complete list of released models pertaining to gain and electrical downtilt, please see the quick reference guide on page 14. 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7721.00 Patterns Base Station Antennas Page 16 Typical Horizontal and Vertical 7722.00 Patterns - 2 1 7 0 M H z B r o a d B a n d A n t e n n a Available in volume Q3 2002 Preliminary Electrical Specifications 7735 7740 1850 - 2170 13.5 dBi (15.5 dBd) dual linear, +/- 45° <1.4:1 90° 13.5° 0° - 16° >30 dB >25 dB >18 dB <-20 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB 1850 - 2170 16.5 dBi (14.5 dBd) dual linear, +/- 45° <1.4:1 90° 7° 0° - 8° >30 dB > 25 dB > 18 dB <-20 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB 7/16 DIN bottom mounted 27.4" (697 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) 7/16 DIN bottom mounted 51" (1297 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) Frequency range (MHz) Gain Polarization VSWR, 50Ω Horizontal 3dB beamwidth Vertical 3dB beamwidth MET (AEDT) Co-pol 40 degree cone Front-to-back ratio 40 degree cone Front-to-back ratio, total power Suppression of first upper side lobe (0° ET) First lower null fill Power handling, average per input Power handling, average total Typical IM3, 2 Tx @ 43dBm (1800, 1900 MHz) Typical IM7, 2 Tx @ 43dBm (2100 MHz) Isolation between ports Preliminary Mechanical Specifications Connector Height Width Depth Survival wind speed *All feed network components DC grounded for Lightning Protection Pole mount and downtilt bracket are pre-mounted. Tilt range -1.5° to +35° Comments Gain is typical within frequency band. Radome color is NCS 2502-B (RAL 7035)(gray). -1° to +17° For a complete list of released models pertaining to gain and electrical downtilt, please see the quick reference guide on page 14. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7735.00 Patterns Typical Horizontal and Vertical 7740.00 Patterns Base Station Antennas Page 17 UXM-1850-217090-16.5i-A (UXM-1850-2170-90-16.5i-A) UXM-1850-217090-13.5i-A (UXM-1850-2170-90-13.5i-A) 1850 - 2170 MHz Broad Band Antenna 1 8 5 0 1850 - 2170 MHz Broad Band Antenna UXM-1850-217090-18i-A 1 8 5 0 - 2 1 7 0 M H z B r o a d B a n d A n t e n n a Available in volume Q3 2002 Preliminary Electrical Specifications 7745 (UXM-1850-2170-90-18i-A) Frequency range (MHz) Gain Polarization VSWR, 50Ω Horizontal 3dB beamwidth Vertical 3dB beamwidth MET (AEDT) Co-pol 40 degree cone Front-back-ratio 40 degree cone Front-to-back ratio, total power Suppression of first upper side lobe First lower null fill Power handling, average per input Power handling, average total Typical IM3, 2 Tx @ 43dBm (1800, 1900 MHz) Typical IM7, 2 Tx @ 43dBm (2100 MHz) Isolation between ports 1850 - 2170 18 dBi (16 dBd) dual linear, +/- 45° <1.4:1 90° 4.7° 0° - 5° >30 dB >25 dB >18 dB <-18 dB typical 250 W 500 W <-107 dBm <-117 dBm >30 dB Preliminary Mechanical Specifications Connector Height Width Depth Survival wind speed 7/16 DIN bottom mounted 78.7" (2000 mm) 6.6" (167 mm) 3.5" (89.5 mm) 156 mph (70 m/s) *All feed network components DC grounded for Lightning Protection Pole mount and downtilt bracket are pre-mounted. Tilt range -0.4° to +10.6° Comments Gain is typical within frequency band. Radome color is NCS 2502-B (RAL 7035)(gray). For a complete list of released models pertaining to gain and electrical downtilt, please see the quick reference guide on page 14. 0 -5 -10 -15 -20 -25 -30 -35 -40 Typical Horizontal and Vertical 7745.00 Patterns Base Station Antennas Page 18 M H z D u a l Features • Slant 45 degree design to optimize performance • Superior diversity performance due to patented element design • High cross polar discrimination factor • High port to port isolation • Minimum squint and tracking • Superior vertical pattern shaping for interference reduction • Optional Manual adjustable Electrical Tilt (MET) for tuning flexibility • Can be upgraged to remote controlled RET functionality starting in 2002 Design Philosophy The Allgon Dual Polarized antenna is designed with a slant +/- 45° configuration which has equal signal strengths on both polarizations. The ultra-slim design and sophisticated electrical performance ensures maximum efficiency, as well as a stable pattern over the entire frequency range. This design relies on leading-edge patch technology fed via a micro strip PCB network. The slant +/- 45° dual polarization system provides the independent fading signals needed for achieving top-quality coverage via diversity concepts. The optional Manual adjustable Electrical Tilt (MET) module is based on a patented sliding dielectric that minimizes intermodulation distortion and maximizes efficiency. The MET function allows you to field-adjust the electrical tilt from 0° to VBW for optimum roll-off effect. P o l a r i z e d A n t e n n a Performance The Allgon Dual Polarized antenna has been designed and tested to ensure maximum performance and reduced polarization errors. Isolation is another important aspect of dual polarized antennas. A well designed antenna should have at least 30 dB - it is a sign of quality and shows how much effort has been put into the design stage. Brackets Allgon antenna mounts have been carefully designed and tested to ensure a fast and problemfree installation. The mounts are pre-mounted or copacked with the antenna and ready for mounting directly to a pole, outside diameter 1.0” - 5.0” (25125 mm). They can be mounted vertically or tilted, see tilt range specified in each antenna specification. For more information, please see pages 48 - 50. Quality Materials Proper use of materials and their structure ensure performance integrity. In antennas, the electrical performance is directly related to mechanical structure. The choice of radome material is crucial since it acts as a window between the radiating elements and the coverage area. Our UV stabilized PVC and ASA radomes have extremely low moisture absorption. Further, our radomes withstand mechanical stresses, even at low temperatures and long exposure to UV radiation. For corrosion inhibition, we use aircraft quality aluminum alloy that is inherently resistant to corrosion caused by the environment. Connectors 7/16 DIN Connector Base Station Antennas Page 19 1800 MHz Dual Polarized Antenna 1 8 0 0 1800 MHz Dual Polarized Antenna Q U I C K R E F E R E N C E G U I D E 65 Degree 1800 MHz Dual Polarized Gain Part Number Description Page 15 dBi 7600.00 7600.02 7600.06 XM-1800-65-15i-0-D XM-1800-65-15i-2-D XM-1800-65-15i-6-D 21 21 21 17.5 dBi 7601.00 7601.02 7601.06 XM-1800-65-17.5i-0-D XM-1800-65-17.5i-2-D XM-1800-65-17.5i-6-D 21 21 21 65 Degree 1800 MHz Dual Polarized with Manual adjustable Electrical Tilt (MET) Gain Part Number 17.5 dBi 7630.00 Description Page XM-1800-65-17.5i-A-D 22 Please contact Allgon for the latest updates regarding product availability. 1800 MHz Dual Polarized Antenna Description Detail: X M - 1 8 0 0 - 6 5 - 17.5i - A Cross Polarized Metro Family Frequency Band Horizontal Beamwidth Gain in dBi - D 7/16 DIN Connector Electrical Downtilt Angle or A for MET A trailing U indicates connector placement on the top, no U indicates connector placement on the bottom. Antennas may be ordered using part number or description. Base Station Antennas Page 20 M H z Electrical Specifications D u a l P o l a r i z e d 7600 (XM-1800-65-15i) Gain 15 dBi (13 dBd) linear, dual slant 45 Polarization <1.3:1 VSWR, 50Ω (1710 MHz to 1880 MHz) 65° Horizontal 3dB beamwidth 15° Vertical 3dB beamwidth 0°, 2° & 6° Custom electrical downtilts >23 dB Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power >20 dB >18 dB Cross-polar discrimination, boresite >17 dB Suppression of first upper side lobe >-20 dB First lower null fill 500W total at 250W per input Maximum CW input power Two tone intermodulation 3rd order <-110 dBm for 2x10W > 30 dB Isolation between ports A n t e n n a 7601 (XM-1800-65-17.5i) 17.5 dBi (15.5 dBd) linear, dual slant 45 <1.3:1 65° 7° 0°, 2° & 6° >20 dB >20 dB >18 dB >17 dB >-20 dB 500W total at 250W per input <-110 dBm for 2x10W >30 dB 7/16 DIN bottom 697 mm (27.4”) 167 mm (6.6”) 58 mm (2.3”) 2.2 kg (4.9 lb.) 5.8 kg 70 m/s (156 mph) 0.12 sq.m (1.23 sq. ft.) 122N (27.5 lbf) 7/16 DIN bottom 1297 mm (51.1”) 167 mm (6.6”) 58 mm (2.3”) 3.4 kg (7.5 lb.) 7 kg 70 m/s 0.22 sq.m (2.4 sq. ft.) 221 N (53.4 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included -1.5° to +35° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). -1° to +17° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 20. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7600.00 Patterns Typical Horizontal and Vertical 7601.00 Patterns Base Station Antennas Page 21 XM-1800-65-17.5i Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h XM-1800-65-15i Mechanical Specifications 1800 MHz Dual Polarized Antenna 1 8 0 0 1800 MHz Dual Polarized Antenna XM-1800-90-16i XM-1800-65-17.5i-A 1 8 0 0 M H z D u a l Electrical Specifications P o l a r i z e d A n t e n n a 7630 (XM-1800-65-17.5i-A) Gain 17.5 dBi (15.5 dBd) Polarization linear, dual slant 45 VSWR, 50Ω (1710 MHz to 1880 MHz) <1.4:1 Horizontal 3dB beamwidth 65° Vertical 3dB beamwidth 7° Met (AEDT) 0° to 8° (1° increments) Co-pol 40 degree cone Front-to-back-ratio >23 dB 40 degree cone Front-to-back ratio, total power >20 dB Cross-polar discrimination, boresite >18 dB Suppression of first upper side lobe (0° ET) >19 dB First lower null fill N/A Maximum CW input power 400W at 200 W per input Two tone intermodulation 3rd order <-110 dBm for 2x10W Isolation between ports >30 dB Mechanical Specifications Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h 7/16 DIN bottom 1297 mm (51.1”) 167 mm (6.6”) 58 mm (2.3”) 4.3 kg (9.5 lb.) 7.9 kg 70 m/s (156 mph) 0.22 sq.m (2.4 sq. ft.) 221N (53.4 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included Tilt Range -1° to +17° Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). 0 -5 -10 -15 -20 -25 -30 -35 -40 Typical Horizontal and Vertical 7630.00 Patterns Base Station Antennas Page 22 For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 20. M H z D u a l Features • Slant 45 degree design to optimize performance • Superior diversity performance due to patented element design • High cross polar discrimination factor • High port to port isolation • Minimum squint and tracking • Exact aperture angle • Superior vertical pattern shaping for interference reduction Design Philosophy The Allgon Dual Polarized antenna is designed with a slant + 45° configuration which has equal signal strengths. Research has determined that the horizontal/vertical configuration has large differences in mean signal strength between the two branches, because the horizontal component has greater propogation loss than the vertical. Our design is backed by the thorough research and testing to insure the highest possible diversity gain, isolation, and cross polar discrimination. Testing Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. For more information on testing procedures, see page 47. Our front-to-back ratios are specified for +20° from 180° (worst case) to 0° in a total power configuration. P o l a r i z e d A n t e n n a Performance The Allgon Dual Polarized antenna has been designed and tested to ensure maximum performance and reduced polarization errors. Isolation is another important aspect of dual polarized antennas. A well designed antenna should have at least 30 dB - it is a sign of quality and shows how much effort has been put into the design stage. Brackets Allgon antenna mounts have been carefully designed and tested to ensure a fast and problemfree installation. The mounts are pre-mounted or copacked with the antenna and ready for mounting directly to a pole, outside diameter 1.0” - 5.0” (25125 mm). They can be mounted vertically or tilted, see tilt range specified in each antenna specification. For more information, please see pages 48 - 50. Quality Materials Proper use of materials and their structure ensure performance integrity. In antennas, the electrical performance is directly related to mechanical structure. The choice of radome material is crucial since it acts as a window between the radiating elements and the coverage area. Our UV stabilized PVC and ASA radomes have extremely low moisture absorption. Further, our radomes withstand mechanical stresses, even at low temperatures and long exposure to UV radiation. For corrosion inhibition, we use aircraft quality aluminum alloy that is inherently resistant to corrosion caused by the environment. Connectors 7/16 DIN Connector Base Station Antennas Page 23 900 MHz Dual Polarized Antenna 9 0 0 900 MHz Dual Polarized Antenna Q U I C K R E F E R E N C E G U I D E 65 Degree 900 MHz Dual Polarized Gain Part Number Description Page 12.5 dBi 7216.03 XU-900-65-12.5i-0-D 25 15.5 dBi 7217.04 XU-900-65-15.5i-0-D 25 15 dBi 7217.03 XU-900-65-15i-7-D 25 17 dBi 7255.04 XU-900-65-17i-0-D 26 16.5 dBi 7255.03 XU-900-65-16.5i-6-D 26 18 dBi 7218.05 XU-900-65-18i-0-D 26 17.5 dBi 7218.04 7218.03 XU-900-65-17.5i-4-D XU-900-65-17.5i-6-D 26 26 Please contact Allgon for the latest updates regarding product availability. 900 MHz Dual Polarized Antenna Description Detail: X U - 9 0 0 - 6 5 - 1 2 . 5 i - 0 Cross Polarized Metro Family Frequency Band Horizontal Beamwidth Gain in dBi - D 7/16 DIN Connector Electrical Downtilt Angle or A for MET A trailing U indicates connector placement on the top, no U indicates connector placement on the bottom. Antennas may be ordered using part number or description. Base Station Antennas Page 24 M H z D u a l Electrical Specifications P o l a r i z e d 7216 (XU-900-65-12.5i) 7217 (XU-900-65-15.5i) 15.5 dBi (13.5 dBd) linear, dual slant 45 <1.4:1 (880 MHz to 915 MHz) <1.3:1 (925 MHz to 960 MHz) 65° 13° 0° & 7° >24 dB >20 dB >20 dB >17 dB N/A 500W at 250W per input <-107 dBm for 2x20W (150 dBc at 2x43 dBm) >30 dB Mechanical Specifications 7/16 DIN bottom 660 mm (25.9”) 256 mm (10.1”) 50 mm (2”) 4 kg (8.8 lb.) 7.6 kg 55 m/s (123 mph) 0.17 sq.m (1.8 sq. ft.) 190N (42.7 lbf) 7/16 DIN bottom 1320 mm (52”) 256 mm (10.4”) 50 mm (2”) 6.5 kg (14.3 lb.) 10.1 kg 55 m/s (123 mph) 0.33 sq.m (3.6 sq. ft.) 370 N (83.1 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included -1.5° to +35° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). 0 -0.7° to +16° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 24. 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7216.03 Patterns Typical Horizontal and Vertical 7217.04 Patterns Base Station Antennas Page 25 XU-900-65-15.5i Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h XU-900-65-12.5i Gain 12.5 dBi (10.5 dBd) linear, dual slant 45 Polarization <1.4:1 (880 MHz to 915 MHz) VSWR, 50Ω <1.3:1 (925 MHz to 960 MHz) VSWR, 50Ω 65° Horizontal 3dB beamwidth 26° Vertical 3dB beamwidth 0° Custom electrical downtilts >24 dB Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power >20 dB >20 dB Cross-polar discrimination, boresite >10 dB Suppression of first upper side lobe N/A First lower null fill 250W Maximum CW input power Two tone intermodulation 3rd order <-107 dBm for 2x20W (150 dBc at 2x43 dBm) >30 dB Isolation between ports A n t e n n a 900 MHz Dual Polarized Antenna 9 0 0 900 MHz Dual Polarized Antenna XU-900-65-18i XU-900-65-17i 9 0 0 M H z Electrical Specifications D u a l P o l a r i z e d 7255 (XU-900-65-17i) 17 dBi (15 dBd) Gain linear, dual slant 45 Polarization <1.4:1 (880 MHz to 915 MHz) VSWR, 50Ω <1.4:1 (925 MHz to 960 MHz) VSWR, 50Ω 65° Horizontal 3dB beamwidth 9° Vertical 3dB beamwidth 0° & 6° Custom electrical downtilts >24 dB Co-pol 40 degree cone Front-to-back-ratio 40 degree cone Front-to-back ratio, total power >20 dB >20 dB Cross-polar discrimination, boresite >17 dB Suppression of first upper side lobe N/A First lower null fill 500W at 250W per input Maximum CW input power Two tone intermodulation 3rd order <-107 dBm for 2x20W (150 dBc at 2x43 dBm) >30 dB Isolation between ports A n t e n n a 7218 (XU-900-65-18i) 18 dBi (16 dBd) linear, dual slant 45 <1.5:1 (880 MHz to 915 MHz) <1.4:1 (925 MHz to 960 MHz) 65° 6.5° 0°, 4° & 6° >24 dB >20 dB >20 dB >17 dB N/A 500W at 250W per input <-107 dBm for 2x20W (150 dBc at 2x43 dBm) >30 dB Mechanical Specifications Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h 7/16 DIN bottom 1940 mm (76.3”) 256 mm (10.1”) 50 mm (2”) 9 kg (19.8 lb.) 12.6 kg 55 m/s (123 mph) 0.50 sq.m (5.4 sq. ft.) 550 N (123.6 lbf) 7/16 DIN bottom 2580 mm (102”) 256 mm (10.4”) 50 mm (2”) 13 kg (28.7 lb.) 16.6 kg 55 m/s (123 mph) 0.66 sq.m (7.1 sq. ft.) 750 N (168.5 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included -0.5° to +11° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). -0.4° to +8° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 24. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7255.04 Patterns Base Station Antennas Page 26 Typical Horizontal and Vertical 7218.05 Patterns M H z U r b a n P a n e l Features • Same pattern across the entire frequency band • 100% VSWR testing • Superior vertical pattern shaping for interference reduction • 100% verified for vertical pattern performance • Mechanical design allows for thermal expansion • Aesthetically pleasing Design Philosophy The Allgon “Slim Panel” Antenna is designed in a repeatable procedure which requires no tuning or modification, with the specification being the same from product to product. The Urban “Slim Panel” antenna has a robust mechanical design which does not rely on the radome for support. The radome, which is only for weatherproofing, is set inside the endcaps and allows for thermal expansion. Testing Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. For more information on testing procedures, see page 47. Our front-to-back ratios are specified for +20° from 180° (worst case) to 0°. Connectors A n t e n n a Performance The Allgon “Slim Panel” antennas have verified vertical pattern performance on 100% of the antennas. The product line has a better than 1.4:1 VSWR receive and 1.3:1 transmit. The “Slim Panel” antenna has consistent, reliable performance from frequency to frequency and product to product. Brackets Allgon antenna mounts have been carefully designed and tested to ensure a fast and problemfree installation. The mounts are pre-mounted or co-packed with the antenna and ready for mounting directly to a pole, outside diameter 1.0” 5.0” (25-125 mm). They can be mounted vertically or tilted, see tilt range specified in each antenna specification. For more information, please see pages 48 - 50. Quality Materials Proper use of materials and their structure ensures performance integrity. In antennas, the electrical performance is directly related to mechanical performance. The choice of radome materials is crucial since it acts as a window between the radiating elements and the coverage area. Our UV stabilized PVC radome is resistant to moisture absorption. Furthermore, our radomes can withstand mechanical stresses, even at low temperatures and long exposure to UV radiation. For corrosion inhibition, we use aircraft quality aluminum alloy that is inherently resistant to corrosion caused by the environment. 7/16 DIN Connector Base Station Antennas Page 27 900 MHz Urban Panel Antenna 9 0 0 900 MHz Urban Panel Antenna Q U I C K R E F E 65 Degree 900 MHz Flat Panel Gain Part Number Description R E N C Gain Part Number Page 13 dBi 7225.04 U-900-65-13i-0-D 29 7226.04 U-900-65-15.5i-0-D 29 17 dBi 7227.04 U-900-65-17i-0-D 30 18 dBi 7228.04 7228.08 U-900-65-18i-0-D U-900-65-18i-2-D 30 30 U I D U-900-90-15i-0-D U-900-90-15i-4-D 31 31 16.5 dBi 7233.04 U-900-90-16.5i-0-D 31 Description Detail: U - 9 0 0 - 6 5 - 1 5 . 5 i - 0 - D 7/16 DIN Connector Gain in dBi Electrical Downtilt Angle Antennas may be ordered using part number or description. Base Station Antennas Page 28 Page 7232.04 7232.07 900 MHz Urban Panel Antenna Horizontal Beamwidth Description 15 dBi Please contact Allgon for the latest updates regarding product availability. Frequency Band G 90 Degree 900 MHz Flat Panel 15.5 dBi Urban Family E E M H z U r b a n Electrical Specifications P a n e l 7225 (U-900-65-13i) 13 dBi (11 dBd) Gain linear, vertical Polarization <1.4:1 (870 MHz to 925 MHz) VSWR, 50Ω <1.3:1 (925 MHz to 960 MHz) VSWR, 50Ω 65° Horizontal 3dB beamwidth 26° Vertical 3dB beamwidth 0° Custom electrical downtilts >25 dB 40 degree cone Front-to-back ratio >9 dB Suppression of first upper side lobe N/A First lower null fill 300W Maximum CW input power Two tone intermodulation 3rd order <-107 dBm for 2x20W (150 dBc at 2x43 dBm) A n t e n n a 900 MHz Urban Panel Antenna 9 0 0 7226 (U-900-65-15.5i) 15.5 dBi (13 dBd) linear, vertical <1.4:1 (870 MHz to 925 MHz) <1.3:1 (925 MHz to 960 MHz) 65° 14° 0° >23 dB >17 dB N/A 500W <-107 dBm for 2x20W (150 dBc at 2x43 dBm) 7/16 DIN bottom 660 mm (26”) 256 mm (10.1”) 50 mm (2”) 5 kg (11 lb.) 8.6 kg 55 m/s (123 mph) 0.17 sq.m (1.8 sq. ft.) 190N (42.7 lbf @ 100 mph) 7/16 DIN bottom 1320 mm (52”) 256 mm (10.1”) 50 mm (2”) 7 kg (15.4 lb.) 10.6 kg 55 m/s (123 mph) 0.34 sq.m (3.6 sq. ft.) 370 N (95.6 lbf @ 100 mph) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included -1.3° to +31° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). -0.6° to +15° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 28. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7225.04 Patterns Typical Horizontal and Vertical 7226.04 Patterns Base Station Antennas Page 29 U-900-65-15.5i Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h U-900-65-13i Mechanical Specifications 9900 MHz Urban Panel Antenna U-900-65-18i U-900-65-17i 9 0 0 M H z U r b a n Electrical Specifications P a n e l 7227 (U-900-65-17i) 17 dBi (15 dBd) Gain linear, vertical Polarization <1.4:1 (870 MHz to 925 MHz) VSWR, 50Ω <1.3:1 (925 MHz to 960 MHz) VSWR, 50Ω 65° Horizontal 3dB beamwidth 9° Vertical 3dB beamwidth 0° Custom electrical downtilts >23 dB 40 degree cone Front-to-back ratio >17 dB Suppression of first upper side lobe >-13 dB First lower null fill 500W Maximum CW input power Two tone intermodulation 3rd order <-107 dBm for 2x20W (150 dBc at 2x43 dBm) A n t e n n a 7228 (U-900-65-18i) 18 dBi (16 dBd) linear, vertical <1.4:1 (870 MHz to 925 MHz) <1.3:1 (925 MHz to 960 MHz) 65° 6.5° 0° & 2° >23 dB >19 dB >-20 dB 500W <-107 dBm for 2x20W (150 dBc at 2x43 dBm) Mechanical Specifications Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h 7/16 DIN bottom 1940 mm (76.4”) 256 mm (10.1”) 50 mm (2”) 11 kg (23.2 lb.) 14.6 kg 55 m/s (123 mph) 0.50 sq.m (5.3 sq. ft.) 550N (140 lbf @ 100 mph) 7/16 DIN bottom 2580 mm (102”) 256 mm (10.1”) 50 mm (2”) 14 kg (30.9 lb.) 17.6 kg 55 m/s (123 mph) 0.66 sq.m (7.1 sq. ft.) 730 N (187 lbf @ 100 mph) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included -0.4° to +10° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). 0 -0.4° to +8° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 28. 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7227.04 Patterns Base Station Antennas Page 30 Typical Horizontal and Vertical 7228.04 Patterns M H z U r b a n Electrical Specifications P a n e l 7232 (U-900-90-15i) Gain 15 dBi (14.5 dBd) linear, vertical Polarization <1.4:1 (870 MHz to 925 MHz) VSWR, 50Ω <1.3:1 (925 MHz to 960 MHz) VSWR, 50Ω 90° Horizontal 3dB beamwidth 9° Vertical 3dB beamwidth 0° & 4° Custom electrical downtilts >20 dB 40 degree cone Front-to-back ratio >-15 dB Suppression of first upper side lobe >-15 dB First lower null fill 500W Maximum CW input power Two tone intermodulation 3rd order <-107 dBm for 2x20W (150 dBc at 2x43 dBm) A n t e n n a 900 MHz Urban Panel Antenna 9 0 0 7233 (U-900-90-16.5i) 16.5 dBi (14.5 dBd) linear, vertical <1.4:1 (870 MHz to 925 MHz) <1.3:1 (925 MHz to 960 MHz) 90° 6.5° 0° >20 dB >17 dB N/A 500W <-107 dBm for 2x20W (150 dBc at 2x43 dBm) 7/16 DIN bottom 1940 mm (76.4”) 160 mm (6.3”) 55 mm (2.2”) 9 kg (19.8 lb.) 12.6 kg 55 m/s (123 mph) 0.31 sq.m (3.3 sq. ft.) 340 N (87.8 lbf @ 100 mph) 7/16 DIN bottom 2580 mm (102”) 160 mm (6.3”) 55 mm (2.2”) 11 kg (23.2 lb.) 14.6 kg 55 m/s (123 mph) 0.41 sq.m (4.4 sq. ft.) 450 N (117 lbf @ 100 mph) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included -0.4° to +10° Tilt Range Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). -0.4° to +8° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 28. 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7232.04 Patterns Typical Horizontal and Vertical 7233.04 Patterns Base Station Antennas Page 31 U-900-90-16.5i Connector Height Width Depth Antenna Weight Weight including tilt brackets Survival wind speed Maximum wind area Frontal wind load @150 km/h U-900-90-15i Mechanical Specifications M H z O m n i d i r e c t i o n a l Features • Extremely rugged • Minimized tip deflector • Feed path yields consistent RF path and IM performance A n t e n n a Performance The Omni antenna is designed to provide good power handling with low intermodulation. It can survive in wind speed of 156 mph, and also has low deflection of <1° at 156 mph wind speed. • Able to manage high wind speeds • Good power handling Brackets • No hygroscopic materials • Easily adaptive to customer requirements • Electrical downtilt available Design Philosophy Our Omnidirectional antenna is designed in a repeatable procedure which requires no tuning or modification, with the specification being the same from product to product. The Omni has a somewhat larger diameter allowing room for individual feed of the radiating elements, easy control of the amplitude and phase, and cables of sufficient dimensions for the current. Also, the larger diameter allows for the extruded internal support pipe which gives the Omni its robust and rigid design, a greater survival wind speed, and allows for a radome of extruded PVC plastics, thus avoiding fiberglass. Testing Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. For more information on testing procedures, see page 47. Bracket hardware for the Omni is made of only the highest quality acid-proof stainless steel and is available in non-tilt mounting to a pipe. For additional information, see pages 48 - 50. Quality Materials Proper use of materials and their structure ensures performance integrity. In antennas, the electrical performance is directly related to mechanical performance. The choice of radome material is crucial since it acts as a window between the radiating elements and the coverage area. The Omni antenna is made of silverplated brass with an allydyne treatment to resist corrosion. Also, the dielectric insulators are made of teflon. Our UV stabilized PVC radome is resistant to moisture absorption and can withstand mechanical stresses, even at low temperatures and long exposure to UV radiation. Connectors 7/16 DIN Connector Base Station Antennas Page 32 900 MHz Omnidirectional Antenna 9 0 0 900 MHz Omnidirectional Antenna Q U I C K R E F E R E 11 dBi 4168.11.33.00 4168.11.33.02 4168.11.33.03 4168.11.33.06 C E G U I D 900 MHz Omni Electrical Downtilt Inverted Mount 900 MHz Omni Gain Part Number N Description Page O-900-360-11i-0-D O-900-360-11i-2-D O-900-360-11i-3-D O-900-360-11i-6-D 34 34 34 34 Gain Part Number 9 dBd 4168.11.33.52 Description Page O-900-360-11i+2-D 34 Please contact Allgon for the latest updates regarding product availability. 900 MHz Omnidirectional Antenna Description Detail: O - 9 0 0 - 3 6 0 - 1 1 i - 0 - D 7/16 DIN Connector Omni Family Frequency Band Horizontal Beamwidth Gain in dBi Electrical Downtilt Angle Antennas may be ordered using part number or description. Base Station Antennas Page 33 E M H z O m n i d i r e c t i o n a l Electrical Specifications A n t e n n a 4168.11 (O-900-360-11i) Gain Polarization VSWR, 50Ω, Tx VSWR, 50Ω, Rx Horizontal 3dB beamwidth Vertical 3dB beamwidth Custom electrical downtilts Maximum CW input power Two tone intermodulation 3rd order 11 dBi (9 dBd) linear <1.3:1 <1.5:1 360° 6.5° 0°, 2°, 3°, 6° & +2° 500W <-103 dBm for 2x20W (146 dBc at 2x43 dBm) Mechanical Specifications 7/16 DIN bottom / inverted mount 3000 mm (118.1”) 78 mm (3.1”) 11 kg (30.2 lb.) 70 m/s (156 mph) 0.25 sq.m (2.7 sq. ft.) 300 N (56 lbf) O-900-360-11i Connector Height Diameter Antenna Weight Survival wind speed Maximum wind area Frontal wind load @150 km/h 900 MHz Omnidirectional Antenna 9 0 0 All metallic components DC grounded for Lightning Protection Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 33. 0 -5 -10 -15 -20 -25 -30 -35 -40 Typical Horizontal and Vertical 4168.11 Patterns Base Station Antennas Page 34 I n d o o r P a n e l A n t e n n a Indoor Omni Antenna Features • Perfect for indoor coverage • Sleek design Brackets Bracket hardware for the Indoor omni antenna is designed for easy installation. • Easy to install • Feed path yields consistent RF path and IM performance • Easily adaptive to customer requirements Design Philosophy Our Indoor omnidirectional antenna is designed in a repeatable procedure which requires no tuning or modification, with the specification being the same from product to product. The Indoor omni antenna is designed to blend into a wall or ceiling inside a building. Testing Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. The antenna is tested for VSWR, intermodulation, power handling and gain. Connectors Type “N” , female connector. Quality Materials Proper use of materials and their structure ensures performance integrity. In antennas, the electrical performance is directly related to mechanical performance. The choice of radome material is crucial since it acts as a window between the radiating elements and the coverage area. Base Station Antennas Page 35 Indoor Omni Antenna Q U I C K R E F E R E N C E G U Multiband (800 MHz/900 MHz/1800 MHz/1900 MHz/2100 MHz) Omni Gain Part Number 1 dBd 7336.00 Description Page ALIC-8/9/18/19/2100-360-3i-O-N 37 Indoor Omni Antenna Description Detail: A L I C - 800-2100- 3 6 0 - 3 i - 0 - N N Connector Indoor Panel Family Frequency Band Horizontal Beamwidth Gain in dBi Electrical Downtilt Angle Antennas may be ordered using part number or description. Base Station Antennas Page 36 I D E I n d o o r O m n i Gain VSWR, 50Ω, typical† Ceiling mounted beamwidth Wall mounted beamwidth Maximum CW input power Two tone intermodulation 3rd order Indoor Omni Antenna Electrical Specifications A n t e n n a 7336.00 (ALIC-8/9/18/19/2100-360-3i-O-N) 0 to 2 dBi (806-960 MHz) 2 to 6 dBi (1420-2400 MHz) 1.5:1 (806-960 MHz & 1420-2400 MHz) 360° 70° 40W < -107 dBm for 2x20W (150 dBc at 2x43 dBm) Mechanical Specifications Connector Width Depth Weight Type N center 7.3" (185 mm) 2.6" (65 mm) 0.5 lbs (0.2 kg) ALIC-8/9/18/19/ 2100-360-3i-O-N Comments Gain is typical within frequency band. Radome color is white †VSWR, 50Ω, worst case, <2:1 ( near the band edges at 806 MHz and 960 MHz ) Base Station Antennas Page 37 Allgon Dual Band Antenna 900 MHz Dual Polarized Antenna 1800 MHz Dual Polarized Antenna Tower Top Feeder Cables Allgon Dual Band Filter Within the Shelter Allgon Dual Band Filter Tower Top Feeder Cables Within Allgon Dual 900 MHz BTS Allgon Dual Band Filter 1800 MHz BTS 1 ANTENNA PER SECTOR FACE Base Station Antennas Page 38 Allgon Dual Band Filter 900 MHz BTS Allgon Dual Band Filter 1800 MHz BTS 2 ANTENNAS PER SECTOR FACE M H z Features • Stable pattern across each frequency band • 100% IM testing • Superior vertical pattern shaping for interference reduction • 100% verified for vertical pattern performance • Mechanical design allows for thermal expansion • Aesthetically pleasing • Option with Manual Adjustable Electrical Downtilt (MET) for tuning flexibility Installation Advantages • Save money on cable • Reduce wind load on the installation • Reduce weight Design The Allgon Dual Band Antenna utilizes a dual band feed network to excite the dual band radiating elements. The Allgon Dual Band Antenna and Dual Band Filter can be used together to cut the amount of cable needed in half. D u a l B a n d S o l u t i o n Manual Adjustable Electrical Tilt (MET) The optional Manual Adjustable Electrical Downtilt (MET) module is based on a patented sliding dielectric that minimizes intermodulation distortion and maximizes efficiency. The MET allow you to field adjust the electrical tilt. For more information on MET, see page 45 . Benefits Using three Allgon Dual Band Antennas per sector face, in-band duplexing is not required. You utilize existing Feeder cables. It allows for future 1800 MHz deployment without another tower climb. These can be reduced to two antennas per sector face in full duplex operation (for high environmental impact sites). Using four single band antennas per sector face, you need only two feeder cables per sector. The four single band antennas per sector face allow for ease of mechanical downtilt optimization between bands. You may reduce this setup to three antennas per sector face using a dual polarized 1800 MHz antenna. Base Station Antennas Page 39 900/1800 MHz Dual Band Solution 9 0 0 / 1 8 0 0 900/1800 MHz Dual Band Solution Q U I C K R E F E R 65° Maximum Gain Dualband Panel Gain Part Number 7330.00 7330.02 7330.04 7330.06 15.5 dBi 17.5 dBi Description E N C E G U I D E 65° Equal Gain Dualband Panel Page ALXC-900/1800-65-15.5/17.5i-0-D ALXC-900/1800-65-15.5/17.5i-2-D ALXC-900/1800-65-15.5/17.5i-4-D ALXC-900/1800-65-15.5/17.5i-6-D 41 41 41 41 Gain Part Number 15.5 dBi 15 dBi 7329.00 Description Page ALXC-900/1800-65-15.5/15i-0-D 43 65° Equal Beamwidth Dualband Panel Gain Part Number 7331.00 7331.02 7331.04 7331.06 16.5 dBd 16 dBd Description Page ALXC-900/1800-65-16.5/16i-0-D ALXC-900/1800-65-16.5/16i-2-D ALXC-900/1800-65-16.5/16i-4-D ALXC-900/1800-65-16.5/16i-6-D 42 42 42 42 Dual Band Filter Part Number 9215.01 Description Page Filter 44 Packages - Antennas and Filters Part Number 5000.00 5000.02 5000.04 5000.06 5001.00 5001.02 5001.04 5001.06 5010.00 Description ALXC-7330.00 + 9215.01 ALXC-7330.02 + 9215.01 ALXC-7330.04 + 9215.01 ALXC-7330.06 + 9215.01 ALXC-7331.00 + 9215.01 ALXC-7331.02 + 9215.01 ALXC-7331.04 + 9215.01 ALXC-7331.06 + 9215.01 ALXC-7329.00 + 9215.01 Dualband Antenna Description Detail: A L X C - 9 0 0 / 1 8 0 0 - 6 5 - 1 5 . 5 i / 1 7 . 5 i - 0 D 7/16 DIN Connector Dual Band Family Frequency Bands Horizontal Beamwidth Gain in dBi 900 MHz Gain in dBi 1800 MHz Antennas may be ordered using part number or description. Base Station Antennas Page 40 Electrical Downtilt Angle or A for MET M H z Electrical Specifications D u a l B a n d A n t e n n a 7330 (ALXC-900/1800-65-15.5/17.5i) 15.5 dBi (13.5 dBi) 870 to 960 MHz 17.5 dBi (15.5 dBd) 1710 to 1880 MHz linear, dual slant 45 Polarization <1.5:1 RX, 1.3:1 TX VSWR, 50Ω 65° Horizontal 3dB beamwidth 13° (870 MHz - 960 MHz) Vertical 3dB beamwidth 7° (1710 MHz - 1880 MHz) 0°, 2°, 4° & 6° (same tilt angle for both bands) Custom electrical downtilts >26 dB co-polar, >22 dB total power 40 degree cone Front-to-back ratio >16 dB Suppression of first upper side lobe >20 dB (870 MHz - 960 MHz) First lower null fill >-18 dB (1710 MHz - 1880 MHz) 600W (total) Maximum CW input power, 300 W per port >11 dB Cross polar discrimination <-107 dBm for 2x20W Two tone intermodulation 3rd order (900 MHz) (150 dBc at 2x43 dBm) <-110 dBm for 2x10W Two tone intermodulation 3rd order (1800 MHz) (150 dBc at 2x40 dBm) Gain ALXC-900/180065-15.5/17.5i Mechanical Specifications Connector 7/16 DIN bottom Height 1450 mm (53.1”) Width 280 mm (11”) Depth 125 mm (4.9”) Antenna Weight 10.8 kg (20.7 lb.) Weight including tilt brackets 14.4 kg Survival wind speed 70 m/s (156 mph) Maximum wind area 0.41 sq.m (4.1 sq. ft.) Frontal wind load @150 km/h 450 N (107 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included Tilt Range For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 40. -0.6° to +15° Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7330.00 Patterns at 900 MHz 900/1800 MHz Dualband Antenna 9 0 0 / 1 8 0 0 Typical Horizontal and Vertical 7330.00 Patterns at 1800 MHz Base Station Antennas Page 41 900/1800 MHz Dual Band Antenna ALXC-900/180065-16.5/16i 9 0 0 / 1 8 0 0 M H z Electrical Specifications D u a l B a n d A n t e n n a 7331 (ALXC-900/1800-65-16.5/16i) 16.5 dBi (14.5 dBi) 870 to 960 MHz 16 dBi (14 dBd) 1710 to 1880 MHz linear, dual slant 45 Polarization <1.5:1 RX, 1.3:1 TX VSWR, 50Ω 65° Horizontal 3dB beamwidth 9° (870 MHz - 960 MHz) Vertical 3dB beamwidth 9° (1710 MHz - 1880 MHz) 0°, 2°, 4°, & 6°(same tilt angle for both bands) Custom electrical downtilts >25 dB co-polar, >21 dB total power 40 degree cone Front-to-back ratio >16 dB Suppression of first upper side lobe >-22 dB (870 MHz - 960 MHz) First lower null fill >-22 dB (1710 MHz - 1880 MHz) 600W (total) Maximum CW input power, 300 W per port >11 dB Cross polar discrimination <-107 dBm for 2x20W Two tone intermodulation 3rd order (900 MHz) (150 dBc at 2x43 dBm) <-110 dBm for 2x10W Two tone intermodulation 3rd order (1800 MHz) (150 dBc at 2x40 dBm) Gain Mechanical Specifications Connector 7/16 DIN bottom Height 1990 mm (53.1”) Width 280 mm (11”) Depth 125 mm (4.9”) Antenna Weight 13.5 kg (20.7 lb.) Weight including tilt brackets 17.1 kg Survival wind speed 70 m/s (156 mph) Maximum wind area 0.56 sq.m (4.1 sq. ft.) Frontal wind load @150 km/h 610 N (107 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included Tilt Range -0.4° to +10° For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 40. Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7331.00 Patterns at 900 MHz Typical Horizontal and Vertical 7331.00 Patterns at 1800 MHz Base Station Antennas Page 42 M H z Electrical Specifications D u a l B a n d A n t e n n a 900/1800 MHz Dualband Antenna 9 0 0 / 1 8 0 0 7329 (ALXC-900/1800-65-15.5/15i) 15.5 dBi (13.5 dBi) 870 to 960 MHz 15 dBi (13 dBd) 1710 to 1880 MHz linear, dual slant 45 Polarization <1.5:1 RX, 1.3:1 TX VSWR, 50Ω 65° Horizontal 3dB beamwidth 13° (870 MHz - 960 MHz) Vertical 3dB beamwidth 13° (1710 MHz - 1880 MHz) 0° (same tilt angle for both bands) Custom electrical downtilts >26 dB co-polar, >22 dB total power 40 degree cone Front-to-back ratio >13 dB Suppression of first upper side lobe N/A (870 MHz - 960 MHz) First lower null fill >-20 dB (1710 MHz - 1880 MHz) 600W (total) Maximum CW input power, 300 W per port >11 dB Cross polar discrimination <-107 dBm for 2x20W Two tone intermodulation 3rd order (900 MHz) (150 dBc at 2x43 dBm) <-110 dBm for 2x10W Two tone intermodulation 3rd order (1800 MHz) (150 dBc at 2x40 dBm) Gain ALXC-900/180065-15.5/15i Mechanical Specifications Connector 7/16 DIN bottom Height 1450 mm (53.1”) Width 280 mm (11”) Depth 125 mm (4.9”) Antenna Weight 10.8 kg (20.7 lb.) Weight including tilt brackets 14.4 kg Survival wind speed 70 m/s (156 mph) Maximum wind area 0.41 sq.m (4.1 sq. ft.) Frontal wind load @150 km/h 450 N (107 lbf) All metallic components DC grounded for Lightning Protection Pole mount and downtilt bracket included Tilt Range For a complete list of released models pertaining to gain, electrical downtilt and connector placement, please see the quick reference guide on page 40. -0.6° to +15° Comments Gain is typical within frequency band. Front-to-back ratio is defined within 20° from the backwards direction in any plane. Sidelobe suppression and null fill is relative to peak of main beam. Frontal windload is calculated assuming the shape factor C=1 Radome color is NCS 2502-B (RAL 7035)(gray). 0 0 -5 -5 -10 -10 -15 -15 -20 -20 -25 -25 -30 -30 -35 -35 -40 -40 Typical Horizontal and Vertical 7329.00 Patterns at 900 MHz Typical Horizontal and Vertical 7329.00 Patterns at 1800 MHz Base Station Antennas Page 43 900/1800 MHz Dual Band Filter 9 0 0 / 1 8 0 0 M H z D u a l B a n d F i l t e r 9215.01 Electrical Specifications Frequency Range 872-960 MHz and 1710-1880 MHz Isolation > 50 dB between the single band ports Insertion Loss, 900 MHz < 0.2 dB between the combined and 900 MHz port Insertion Loss, 1800 MHz < 0.2 dB between the combined and 1800 MHz port Return Loss > 20 dB all ports Maximum Average Power 300W (900 MHz) or 150W (1800 MHz) Typical Combined Maximum Average Power 150W (900 MHz) and 75W (1800 MHz) Two tone intermodulation 3rd order < -110 dBm for 2x20W (153 dBc at 2x43 dBm) Lightning Protection IEC 1312-1 and IEC 1000-4-5 Note: Electrical specifications under normal operating conditions with an antenna Return Loss better than 14 dB, 1.5:1 VSWR. Mechanical Specifications 1900 1790 1680 1570 1460 1350 7/16 DIN plug all three ports 50 mm(2”) 190 mm (7.5”) 60 mm (2.4”) excluding connectors 1.4 kg (3.1 lbs) IP 65 -40°C to +55°C -45°C to +85°C 1240 1130 1020 910 800 Connector Height Width Depth Weight Housing Temperature Range, Operational Temperature Range, Storage Insertion Loss (dB) 0 900 MHz port to combined port -10 -20 900 MHz port to 1800 MHz port -30 1800 MHz port to combined port -40 -50 -60 9215.01 Filter Curves -70 Frequency MHz Base Station Antennas Page 44 B e a m T i l t Antenna Beam Tilt A n t e n n a General In early analog networks, antenna beam tilt was used in order to improve the system performance. The proven effect is that a better illumination control can be achieved. Mechanical antenna tilt was the inital method used in the industry but electriccal down tilt has become the common industry method. The difference between mechanical and electrical down tilt can be examined in figure 1. Mechanical Mec hanic al Downtilt Downtilt Radiation intensity doesnot notchange changeat at 90 90 degrees degrees Radiation intensity does Figure 1 Base Station Antennas Page 45 Electrical Downtilt E lec tric al Downtilt Radiation intensity decreases uniformlyalong alonghorizon horizon Radiation intensity decreases uniformly A n t e n n a B e a m T i l t However, with electrical tilting, the effect is almost the same in all azimuth directions, maintaining the footprint shape while reducing the total illuminated area. Initially the electrical tilt was fixed and factory set and field adjustments were made through mechanical tilting. This is still the most common method in 2G networks. However, Allgon has produced and delivered antennas with field adjustable electrical downtilt MET (AEDT) since mid the 1990's. A lesson from 2G is that flexibility in coverage is of greatest value in the initial rollout phase when the network is immature and the traffic patterns and system behavior are less known. Obviously an operator with experience from 2G systems will have an advantage to those without, since at least the traffic pattern for speech is known. In the discussion and planning of the 3G-network rollout, further flexibility methods of illumination control have been addressed. This has resulted in a number of new acronyms such as, Fixed Electrical Tilt (FET), a traditional fixed factory set electrical tilted antenna. Manually adjustable Electrical down Tilt = MET (AEDT) where adjustments are made up in the tower on the physical antenna structure turning a knob or pulling a steering rod. New Allgon MET (AEDT) Concept Allgon´s new MET (AEDT) module is based on a patented sliding dielectric that minimizes intermodulation distortion and maximizes efficiency. The MET design ensures constant electrical quality. Dual band antennas with four connector ports allow separate tilts on each frequency band and ensure the use of diversity concepts. The MET allows you to field-adjust the electrical tilt from 0° to the first null at horizon, for optimum roll-off effect. Equipping your system with Allgon´s MET antennas prepares you for optimum control of your cell limits, thus allowing for optimized soft/softer handover areas. Allgon´s MET functionality and reliability optimizes your system for the future. The MET (AEDT) function is included in Allgon´s antennas released during 2001 such as the UMTS, XMetro and DXC families. It will also be included in the broad band antenna families under development. Advantages with MET (AEDT) function include: • Independent adjustable electrical down-tilt for tuning flexibility on both bands for dual band antennas • Field-adjustable in 1-degree increments, from 0° to first null at horizon • Prepared for remote-controlled RET functionality Base Station Antennas Page 46 Antenna Beam Tilt Note that with mechanical down tilt, the full effect is only seen in one direction (main) and consequently the tilt effect is greater in that direction than others. Testing Procedures T e s t i n g P r o c e d u r e s Allgon prides itself on stringent testing requirements with conservative, yet realistic claims of the performance of our product offering. Our antennas are evaluated on performance and reliability. Performance Electrical performance can be subdivided into a set of parameters/tests that characterizes the antennas ability to function well; however, good performance is also the sign of good quality and that a lot of effort has been put into the antenna at the design stage. Every Allgon antenna is verified with the following list of parameters: Radiation Pattern Horizontal Beamwidth Elevational beamwidth First upper sidelobe suppression Electrical tilt angle Front-to-Back Ratio First null fill below horizon Intermodulation Products Gain Power Handling Return Loss Lightning Protection Durability Reliability The mechanical stability of an antenna directly effects its electrical performance, therefore our antennas are designed to withstand the harshest conditions and still perform appropriately. Allgon antennas are mechanically verified by the following sequence. (These environmental tests are performed as a general specification. The antenna families may have a few individual changes to the specification). Temperature Change IEC 60068-2-14, test Nb 1°C/min -45°C - to 60°C, 10 cycles Dry Heat (Non operating) IEC 68-2-2, test Bb, +70°C, 16 hours Cold (Non operating) IEC 68-2-1, test Ab, -55°C, 16 hours Water and Dust IEC 68-2-18, test Rb 2.2, 30 min 60° spray angle Random Vibration IEC 60068-2-64, test Fh, severity 1.0 m2/s3 frequency: 5-20 Hz and severity -3 dB/oct frequency 20-200 Hz, duration: 30 min in each of three perpendicular directions. Zero tilt of standard tilt bracket is to be used. Sinus Vibration IEC 60028-2-6, test Fc, severity 1.2 mm displacement for frequecies 5-9 Hz and 10 m/s2 for frequencies 9-200 Hz 5 sweep cycles at zero tilt and 5 sweep cycles at maximum titl (standard tiltbrackets to be used), sweep rate: 1 oct/min in three perpendicular directions Salt Mist IEC 68-2-11, test Ka, 35°C, 48h, 5% salt UV Radiation IEC 68-2-5, test Sa, procedure C, 56 days at,40°C, performed only on UV exposed and UV sensitive parts Air Movement Operating 55m/s verified by calculations or static text, survival 70 m/s verified by calculations or static test Base Station Antennas Page 47 M o u n t i n g B r a c k e t s All antennas, except the City (800 MHz Panel), ALVC (800/1900 MHz Dualband), and ALX, will have these mounting brackets pre-mounted. The pre-mounted brackets are functionally equivalent to the 7254.10 brackets, with the same tilt range. The City, ALVC, and ALX antennas will have co-packed brackets. The new brackets have a high quality surface treatment to maintain Allgon's standards for product exposure to severe environments. Rigidity has been improved by using steel instead of aluminum in the sheet metal parts of the tilt brackets. The tilt brackets are suitable for the majority of the antennas, except for antennas shorter than 20” (0.5 m), which come with no tilting option. Mounting with Included Brackets: Tilt mechanism in tilted position Lower part Tilt mechnism in 0° position Short antennas without tilt or tall antennas with tilt removed Omni antenna mounting Base Station Antennas Page 48 Mounting Brackets All Allgon antennas are delivered with mounting brackets included. It's a policy designed to reduce your workload and save you money in areas such as tower crew installation costs. Mounting Brackets M o u n t i n g B r a c k e t s Optional Mounting Brackets Bracket Description 2201.11 7455.00 2187.0000 7454.00 2198.10 7456.00 Wall and panning kit Flush wall and pole brackets - max 59” (1.5m) Upside-down kit for Omni Triple mount Tilt extender Replacement tilt bracket, 2 mounting points Mounting with wall- and paninng kit 2201.11: Panned and tilted Wall mounting with flush wall and pole brackets, 7455.00: Omni antenna with upside down kit 2187.0000 Base Station Antennas Page 49 Panned, not tilted Lower part panned Pole mount with flush wall and pole brackets 7455.00 M o u n t i n g B r a c k e t s Mounting with Triple Mount 7454.00 Triple mount can be used with broad or narrow antennas, tilted or not tilted as the pictures show, used together or with tilt as well. Base Station Antennas Page 50 Mounting Brackets Optional Mounting Brackets Organized by Part Number Part Number Product Description 2187.0000 UPSIDE-DOWN KIT OMNI 2198.10 Tilt extender kit 2201.01 PANNING WALLBRACKET 3MNTPOINTS 4168.11.33.00 O-900-360-11i-0-D 4168.11.33.02 O-900-360-11i-2-D 4168.11.33.03 O-900-360-11i-3-D 4168.11.33.06 O-900-360-11i-6-D 4168.11.33.52 O-900-360-11i+2-D 7216.03 XU-900-65-12.5i-0-D 7217.03 XU-900-65-15i-0-D 7217.04 XU-900-65-15.5i-0-D 7218.03 XU-900-65-17.5i-6-D 7218.04 XU-900-65-17.5i-4-D 7218.05 XU-900-65-18i-0-D 7225.04 U-900-65-13i-0-D 7226.04 U-900-65-15.5i-0-D 7227.04 U-900-65-17i-0-D 7228.04 U-900-65-18i-0-D 7228.08 U-900-65-18i-2-D 7232.04 U-900-90-15i-0-D 7232.07 U-900-90-15i-4-D 7233.04 U-900-90-16.5i-0-D 7255.03 XU-900-65-16.5i-6-D 7255.04 XU-900-65-17i-0-D 7329.00 ALXC-900/1800-65-15.5/15i-0-D 7330.00 ALXC-900/1800-65-15.5/17.5i-0-D 7330.02 ALXC-900/1800-65-15.5/17.5i-2-D 7330.04 ALXC-900/1800-65-15.5/17.5i-4-D 7330.06 ALXC-900/1800-65-15.5/17.5i-6-D 7331.00 ALXC-900/1800-65-16.5/16i-0-D 7331.02 ALXC-900/1800-65-16.5/16i-2-D 7331.04 ALXC-900/1800-65-16.5/16i-4-D 7331.06 ALXC-900/1800-65-16.5/16i-6-D 7336.00 ALIC-8/9/18/19/2100-360-3i-0-N 7454.00 Triple mount bracket 7455.00 Flush wall and pole brackets 7456.00 Replacement tilt bracket, 2 mounting points 7500.00 UX-2100-65-15.5i-0-D 7500.02 UX-2100-65-15.5i-2-D 7500.06 UX-2100-65-15.5i-6-D 7501.00 UX-2100-65-18i-0-D 7501.02 UX-2100-65-18i-2-D 7501.06 UX-2100-65-18i-6-D 7520.00 UX-2100-65-18i-A-D 7521.00 UX-2100-65-15.5i-A-D 7540.00 UXC-1800/2100-65-17.5/18i-A-D 7600.00 XM-1800-65-15i-0-D 7600.02 XM-1800-65-15i-2-D 7600.06 XM-1800-65-15i-2-D 7601.00 XM-1800-65-17.5i-0-D 7601.02 XM-1800-65-17.5i-2-D 7601.06 XM-1800-65-17.5i-6-D 7630.00 XM-1800-65-17.5i-A-D 7700.00 UXM-1710-2170-65-15i-0-D 7700.06 UXM-1710-2170-65-15i-6-D 7701.00 UXM-1710-2170-65-18i-0-D 7701.06 UXM-1710-2170-65-18i-6-D 7721.00 UXM-1710-2170-65-18i-A-D 7722.00 UXM-1710-2170-65-19i-A-D 7735.00 UXM-1850-2170-65-13.5i-A-D 7740.00 UXM-1850-2170-65-16.5i-A-D 7745.00 UXM-1850-2170-65-18i-A-D 9215.01 900/1800 MHz Dualband Filter 9281.01 UMTS Dualband Filter 9282.01 UMTS Triple band Filter 9283.01 UMTS Rejection FIlter ALIC => Allgon Indoor panel ALXC => Allgon dualband O => Omni U => Urban UX => Allgon UMTS Cross polarized UXM => Allgon Broad Band XM => Cross polarized Metro XU => Cross polarized Urban Index Page 51 Organized by Product Description Page 49 49 49 34 34 34 34 34 25 25 25 26 26 26 29 29 30 30 30 31 31 31 26 26 43 41 41 41 41 42 42 42 42 37 49 49 49 7 7 7 7 7 7 8 8 9 21 21 21 21 21 21 22 15 15 15 15 16 16 17 17 18 44 10 11 12 Part Number 7336.00 7329.00 7330.00 7330.02 7330.04 7330.06 7331.00 7331.02 7331.04 7331.06 4168.11.33.00 4168.11.33.02 4168.11.33.03 4168.11.33.06 4168.11.33.52 7225.04 7226.04 7227.04 7228.04 7228.08 7232.04 7232.07 7233.04 7500.00 7500.02 7500.06 7521.00 7501.00 7501.02 7501.06 7520.00 7540.00 7700.00 7700.06 7701.00 7701.06 7721.00 7722.00 7735.00 7740.00 7745.00 7600.00 7600.02 7600.06 7601.00 7601.02 7601.06 7630.00 7216.03 7217.03 7217.04 7255.03 7255.04 7218.03 7218.04 7218.05 Product Description Page ALIC-8/9/18/19/2100-360-3i-0-N ALXC-900/1800-65-15.5/15i-0-D ALXC-900/1800-65-15.5/17.5i-0-D ALXC-900/1800-65-15.5/17.5i-2-D ALXC-900/1800-65-15.5/17.5i-4-D ALXC-900/1800-65-15.5/17.5i-6-D ALXC-900/1800-65-16.5/16i-0-D ALXC-900/1800-65-16.5/16i-2-D ALXC-900/1800-65-16.5/16i-4-D ALXC-900/1800-65-16.5/16i-6-D O-900-360-11i-0-D O-900-360-11i-2-D O-900-360-11i-3-D O-900-360-11i-6-D O-900-360-11i+2-D U-900-65-13i-0-D U-900-65-15.5i-0-D U-900-65-17i-0-D U-900-65-18i-0-D U-900-65-18i-2-D U-900-90-15i-0-D U-900-90-15i-4-D U-900-90-16.5i-0-D UX-2100-65-15.5i-0-D UX-2100-65-15.5i-2-D UX-2100-65-15.5i-6-D UX-2100-65-15.5i-A-D UX-2100-65-18i-0-D UX-2100-65-18i-2-D UX-2100-65-18i-6-D UX-2100-65-18i-A-D UXC-1800/2100-65-17.5/18i-A-D UXM-1710-2170-65-15i-0-D UXM-1710-2170-65-15i-6-D UXM-1710-2170-65-18i-0-D UXM-1710-2170-65-18i-6-D UXM-1710-2170-65-18i-A-D UXM-1710-2170-65-19i-A-D UXM-1850-2170-65-13.5i-A-D UXM-1850-2170-65-16.5i-A-D UXM-1850-2170-65-18i-A-D XM-1800-65-15i-0-D XM-1800-65-15i-2-D XM-1800-65-15i-2-D XM-1800-65-17.5i-0-D XM-1800-65-17.5i-2-D XM-1800-65-17.5i-6-D XM-1800-65-17.5i-A-D XU-900-65-12.5i-0-D XU-900-65-15i-0-D XU-900-65-15.5i-0-D XU-900-65-16.5i-6-D XU-900-65-17i-0-D XU-900-65-17.5i-6-D XU-900-65-17.5i-4-D XU-900-65-18i-0-D 37 43 41 41 41 41 42 42 42 42 34 34 34 34 34 29 29 30 30 30 31 31 31 7 7 7 8 7 7 7 8 9 15 15 15 15 16 16 17 17 18 21 21 21 21 21 21 22 25 25 25 26 26 26 26 26 Antenna Mounting Hardware 7455.00 Flush wall and pole brackets 7456.00 Replacement tilt bracket, 2 mounting points 2198.10 Tilt extender kit 7454.00 Triple mount bracket 2187.0000 UPSIDE-DOWN KIT OMNI 2201.01 PANNING WALLBRACKET 3MNTPOINTS 9215.01 9281.01 9283.01 9282.01 Filters 900/1800 MHz Dualband Filter UMTS Dualband Filter UMTS Rejection FIlter UMTS Triple band Filter 49 49 49 49 49 49 44 10 12 11 Brazil Allgon Telecom Ltda. Rua Alexandre Dumas, 2220 cj. 42 04717-004 São Paulo, SP Ph +55-11-5185.6948 / 6932 Fax +55-11-5181.4002 info.br@allgon.se China Allgon System Beijing Rm 1823, Tower 2 Bright China Changan Building No. 7, Jianguomennei Avenue Dongcheng District 100005 Beijing Tel: +86 10 6510 2018 Fax: +86 10 6510 2017 Allgon Limited 23/F, Tai Yau Building 181 Johnston Road, Wanchai, Hong Kong Tel: +852 2512 6123 Fax: +852 2575 4860 Germany Allgon System GmbH Gewerbestrasse 29, 21279 Hollenstedt Tel: +49 4165 2197 0 Fax: +49 4165 2197 90 system@allgon.de Sweden Allgon System AB Antennvägen 6 SE-187 80 Täby Tel: +46 540 834 80 Fax: +46 540 824 85 system@allgon.se United Kingdom Allgon Systems UK Unit 2 Clayfield Close Moulton Park Industrial Estate Northampton NN3 6QF Tel: +44 1604 494132 Fax: +44 1604 790484 USA Allgon Telecom Ltd. 15051 FAA Blvd. Fort Worth, TX 76155 Tel: +1 817 684 4500 Fax: +1 817 684 3502 sales@allgon.com www.allgon.com ALGPC0201